GCU15BA-130 POWEREX | Alldatasheet
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MITSUBISHI GCT(Gate Commutated Turn-off) THYRISTOR UNIT HIGH POWER INVERTER USE PRESS PACK TYPE GCU15BA-130 met fe) Ss Symmetrical GCT unit otk J an f «GCT and gate driver are connected MS Ghyve* F _«Iraeu ‘Repetitive controllable on state current...1500A Gee foes Vpn ‘Repetitive peak off state voltage 6500V wie 4°) Operation junction temperature 125deg APPLICATION Current source inverters, DC choppers, Induction heaters, DC to DC converter GCT PART(Type name: FGC1500B-130D8) [Symbol [Parameter [Condition [Woltage class [Unit | | Vuuss | Repetitive peak reverse voltage [5090 | Vas | Non-ropetitive peak reverse voltage [T6500 - So (a oa Le=0.3uH, With GU-D15_(See Fig.1,3) po | ee ee PO Ter |e ‘divdt | Critical rate of rise of on state current Tr=1500A, Vn=3000V, Tj=25/125deg Alas Eee rae With GU-D15_ (See Fig. 1,2) diwdt | Critical rate of rise of reverse recovery | =1500A, Vi=3000V, Tj=25/125deg Als (See Fig.4,5) [Wie [Peak forward gate voltage | dT [Wucse [peak reverse gate voltage [a [Heo [Peak forward gatecurrent TT 800 A [Tucw [Peak reverse gate current P1500 A | | Prow [Peak forward gate power dissipation [TC | Puce | Peak reverse gate power dissipation [a [Print | Average forward gate power dissipation [| 180| w_] [Puc | Average reverse gate powerdissipation [| 280 TW [tj | Operation junction temperature [20-125 [stg [Storage temperature 20-150 | [=| Mounting force required | (Recommended value 20KN)—— [1824 | KN | [= [Weight Typical value 760g Tg)
4 MITSUBISHI TSH-382 (1/13)
MITSUBISHI GCT(Gate Commutated Turn-of) THYRISTOR UNIT GCU15BA-130 HIGH POWER INVERTER USE PRESS PACK TYPE | min [typ | Max | [vow [Owstatevotiuge df tossoma, mizsaeg | | - | io | | [uw [Repetitive peak reverse cunrent | Viwo500v, T=izsdee | | — | 200 | ma | [imu | Rtopetitive pak off state current_| Viw=6500V, Vox=-2v,Ti=125deg | = | = | iso | ma | [tom [Reverse gate curent ——[Vuswaav.tjstasdeg | =| = P00 | ma ieee feet fal ff| state voltag Cxpo, wave) 1=1500A, Vi=s00ov, divae=1000ms [_= | = | 5 | us | Pope — (Seem PE With GU-DIs (See Fig 1.2) Bon | Turn-on switching energy 11=800A, Vv=3000V, dildt=1000A/us are With GU-D1s (See Fig. 1,2) Cs=0.2P, Rs=Sohm, Tj=125deg With GU-D1s Gee Fig.1.5) pe feeverew cece | Ee" | Cs=0.2uP, Re=5ohm, Tj=125deg With GU-D15 (See Fig.1.5) Lux | Reverse recovery charge | fr=800A, Vu=3000V, di/at=1000Ans |_— | — | 2000] uc_| seca FETED (See Fig.t.5) Hs fasteners __Jweaw-ncovonm naasieg [=f = fos Ta DC method | - [- Tis tv | [end [thermal resistance ——(dunetiontoFin | | = Looe] nw | nn 3. ne ELECTRIC
MITSUBISHI GCT(Gate Commutated Turn-off) THYRISTOR UNIT GCU15BA-130 HIGH POWER INVERTER USE PRESS PACK TYPE GATE DRIVER PART(Type name: GU-D15) Parameter Symbol | Unit [Ratings Conditions [Min [Typ [ Max | a (NOTE 1) 50 11=830Arms, f=780Hz (NOTE 2) duty=0.33. Control signal ‘Optical fiber data link ‘Transmitter: HFBR-1521(HP) (NOTE 3) Receiver:HFBR-252 (HP) pe pepe ye te current [eeecemn Pm Pe ee a A [ima ene a Te Pe ee current eens Pee ee [rome ee Te ceeds | Status signal worse] ~ [= [T= [= [=f MITSUBISHI ‘TSH-382 (3/13) ELECTRIC
MITSUBISHI GCT(Gate Commutated Turn-off) THYRISTOR UNIT HIGH POWER INVERTER USE PRESS PACK TYPE A 7 4 | y td; OVrc~0.9Vp kal | Fof=100) haamiaaal tgt: OVko~0.1Vp fd 's tsi OVro~0.91r f—dialdt \\ PY dig/dt; 0.11om~0.91am SERRE eee tw: OVko~0.9Tam — i dicg/dt: 0.11kc~0.9Tke hoo! [osssennennenenennnn thd; 50%on signal~OVae Ve diaglde los Vite trd; 50%off signal~0Vo Control signal ‘ Integration area for off; OH 5%Vn~until 100s Fig.1:Turn on and turn off waveform ANL Liload) Re vo pur Vo DUT (10) Ws Fig.2:Turn-on test circuit Fig.3:Turn-off test circuit (With clamp circuit) Qnn=(trrxtna)/2 Integration area for EreciOlr~until 100: ANL {(rec)=100n18 wry / L(lord) ; ot > V i GCU1 Cs aivat(o-o%lun — "| ‘ i/adt(O-5O% lus ‘ 50%TnM Gere Rs sow \\ velr LB 90%Ium Vie Cs Xf ‘Van Fig.5:Turn off and Reverse recovery test circuit Fig.4:Reverse recovery waveform Without the GDU and Ic=0.75A(DC) is supplied to cor] 1 at reverse recovery test MITSUBISHI TSH-382 (4/13) ELECTRIC
MITSUBISHI GCT(Gate Commutated Turn-off) THYRISTOR UNIT HIGH POWER INVERTER USE PRESS PACK TYPE (NOTE 1); (1)Guaranteed power supply voltage for operation is 19V minimum and 21V maximum. (2)When over voltage occurs, GDU voltage bus (G-K voltage for GCT) is clamped to be 21V if maximum voltage for input gate voltage from power supply is 25V and maximum duration of over voltage higher than 21V from power supply is 0.4 sec when control signal is on(Please see Fig.8). (3)When over voltage occurs, GDU voltage bus is clamped to be 21V with no time limitation if maximum voltage from power supply is 25V and control signal is off(Please see Fig.8). (NOTE 2); GCT is off state and no gate signal is supplied for gate driver. No leakage current flows between gate and cathode of GCT. (NOTE 3); Optic fiber data link HFBR-1521 and HFBR-2521 are interlocked each other. (NOTE 4); 1. Status signal from LED ()Status signal Status of TED T GCT (Red) (Yellow) [_offstate [ON ore) (2)Fault signal Status GK PS PS LED GKLED (LED 4) (LED 3) [ Normal [Normal [aoeiv [On On Off, VEIT BVCTyp) | OMF V>12.5VCTyp) then LED Bis on) [Fauit “[GxKshore [ooriy On oT Off, VaT.5VCTyp) 2. Status signal from ‘Transmitter(NOTE 5) (Light |NL:No light) (Normal operation (2)Fault signal(O/V or UV) L — Control signal Control signal SJ (Control board) (Control board) Control signal Control signal (GDU input) (GDU input) ; Satu signal L Status signal il r ‘DU output (GDU output) 1 Normal | Fault (3)Pault signal(G-K short) (Fault signal(fiber optic) L Control signal Control signal (Control board) NL (Control board) Control signal oF Control signal (GDU input) NL | (GDU input) —_XL——_ (Aways No light) Status signal L] i Status signal (Always light) (GDU output) (QDU outpud) Normal | Fault (NOTE 5):About over voltage fault signal, please see Fig.6. MITSUBISHI ‘TSH-382 (5/13) ELECTRIC
MITSUBISHI GCT(Gate Commutated Turn-off) THYRISTOR UNIT HIGH POWER INVERTER USE PRESS PACK TYPE Fig.6: Over voltage fault signal timing chart Power supply voltage J. } Maximum Guaranteed Voltago(NOTE 6 ) 7 \\ } i} 8 | a Pe 7 i JGDU Voltage tus(G-K Voltage for GCD) || | | 1 t 1} | | (NOTE 8) 19V t | Status Signal | | [Control Signal | a S | ‘ Fault signal System shut down start Control signal off 1) t1< 1.0 ms Max. repetition rate; 1 pulse/100 ms 2)122 1.0 ms 8) t8<0.4see (NOTE 6); Maximum peak voltage of GDU input voltage from power supply should be lower than 25V. (NOTE 7); If the period for over voltage < 1.0 ms(period t1),no fault signal is sent. If the period for over voltage 21.0 ms, fault signal starts after period t2 from22V of power supply voltage. System should be shut down(Control signal should be off) within period t3 from fault signal start. (NOTE 8);GDU Voltage bus(G-K Voltage for GCT) is clamped to be 21V if power supply voltage is higher than 21V after system shut down(control signal of? MITSUBISHI TSH-382 (6/13) ane ELECTRIC
MITSUBISHI GCT(Gate Commutated Turn-off) THYRISTOR UNIT HIGH POWER INVERTER USE PRESS PACK TYPE (NOTE 9); Additional support for vibration test Additional support is necessary for vibration test of GCU15BA-130. oe? aN ow? xr tf A & ao TMs of Silt * : ss < . i d T ™ Additional support. SD SL aap: SV > aes =| i C2. ogee | URS ZFS Sass) ome, EMF EE A? < Za Gate driver lies yp Fig.7: connection method between gate driver and heat sink by additional support
4 MITSUBISHI TSH-382 (7/13)
MITSUBISHI GCT(Gate Commutated Turn-off) THYRISTOR UNIT HIGH POWER INVERTER USE PRESS PACK TYPE E E $ watt s wen 2 2) or 2) i Fl |" § 3 4d By cr, g FHI: o x ; & 3 ag co * - NN yor08 NS eorort z eins a roe ag aa (ov) t a) «< 2 CT fee F g EXPEND a alah a a EOPORODRES ales] oN a > 4 ye \\y er) SSS, 2& H a\\ & a % he |= e:] = 3 ] NH | Fl BLOF BR wT “a| NS g 2 Sar? ee | 3| ° DOGSTER Bal Ce I = “ wie 5 nT) Z (62) Fj co}
4 MITSUBISHI TSH-382 (8/13)
MITSUBISHI GCT(Gate Commutated Turn-off) THYRISTOR UNIT GCU15BA-130 HIGH POWER INVERTER USE PRESS PACK TYPE MAXIMUM ON STATE CHARACTERISTIC 10000 — mo i ia fat faa Ieee ane | TT aa 3 1000 cy ra ae Ht PELL LILA Z ian YW a
5 A |
a | L ey i 8 100 Aa |--/ RSEESESEE5 PY Ty=125deg(Maw) | | + | t wan | TTT 10 1 o 1 2 38 4 5 6 7 8 9 10 ON-STATE VOLTAGE Vy (V)
4 MITSUBISHI TSH-382 (9/13)
MITSUBISHI GCT(Gate Commutated Turn-off) THYRISTOR UNIT HIGH POWER INVERTER USE PRESS PACK TYPE Eon vs I; 25 r MO CONDITION — V,=3000V,Tj=125deg di/dt=1000A/us i Cs=0.2uF, Rs=5ohm 2.0 _— a | T pa | Max a iy pe | | { a { lil Ae Z pA [=>] - Typ S lel? | Fa Es E eo en r| = 10 74 a [A Z cS Zz a is 0.5 [LP] Teron test ereuit | v GcT] Rs V0 cs
0.0 TTT TTT TTT
0 200 400 600 800 1000 1200 1400 1600 TURN ON CURRENT I; (A)
4 MITSUBISHI TSH-382 (10/13)
MITSUBISHI GCT(Gate Commutated Turn-off) THYRISTOR UNIT HIGH POWER INVERTER USE PRESS PACK TYPE Eoff vs I, “CONDITION | ] “Vp=3000V, Vpy=Vptl.25*Iy if | 12 [A Tj=125deg, Cs=0.2uF, Rs=Sohm @ po et | = 10 } a / + g & Typ Zz 4 t Z 8 g E A 2 Z| £6 7 | A ma a qe 3 4 7 Z 7 e et | Lfload) Konto.
2 Zz vo Gr, Re
GCTIFor reverse recovery test GCT2For turnoff test 0 a 0 200 400 600 800 1000 1200 1400 1600 TURN OFF CURRENT I, (A)
4 MITSUBISHI TSH-382 (11/13)
MITSUBISHI GCT(Gate Commutated Turn-off) THYRISTOR UNIT HIGH POWER INVERTER USE PRESS PACK TYPE Erec vs Ip CONDITION nae V,=3000V, T}=125deg yy. Max
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ocr, Rs cs GOTH For reverse recovery test GOT For turnoff test, 0 [TT TT; iit 0 200 400 600 800 1000 1200 1400 1600 ON-STATE CURRENT I, (A)
4 MITSUBISHI ‘TSH-382 (12/13)
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